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Thermal and dielectric fingerprints of self-assembling elastin peptides derived from exon30

机译:来源于外显子的自组装弹性蛋白肽的热指纹和介电指纹图谱30

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摘要

Three elastin peptides derived from a peculiar elastin sequence (exon 30) were investigated by Infra-red spectroscopy (IRTF), differential scanning calorimetry (DSC) and dielectric spectroscopy (DDS) to clarify the relationship between structural organization and physical properties of these peptides in the solid state. If a great majority of elastin derived peptides form organized structures, only few are able to coacervate, and only one, that is encoded by Exon 30, gives rise to an irreversible precipitation into amyloid fibers. The peptides studied in this work are constituted by 17, 18 or 22 amino acids whose sequences are contained in the longer exon 30. They all contain the XGGZG sequence (where X, Z = V, L) previously suspected to be responsible for amyloid formation in elastin peptides. Two of them gave rise to amyloid fibers while the other one was able to coacervate. In this work we attempted to correlate vibrational, thermal and dielectric behavior of these peptides in the solid state with the propensity to lead to reversible or irreversible aggregation in vivo.
机译:采用红外光谱(IRTF)、差示扫描量热法(DSC)和介电光谱(DDS)等方法研究了源自特殊弹性蛋白序列(外显子30)的3种弹性蛋白肽,以阐明这些肽在固态下的结构组织与物理性质之间的关系。如果绝大多数弹性蛋白衍生的肽形成有组织的结构,那么只有少数能够凝聚,并且只有一种由外显子 30 编码的肽会引起不可逆的沉淀成淀粉样蛋白纤维。这项工作中研究的肽由17、18或22个氨基酸组成,其序列包含在较长的外显子30中。它们都含有XGGZG序列(其中X,Z = V,L),以前怀疑是弹性蛋白肽中淀粉样蛋白形成的原因。其中两个产生淀粉样纤维,而另一个能够凝聚。在这项工作中,我们试图将这些肽在固态下的振动、热和介电行为与导致体内可逆或不可逆聚集的倾向相关联。

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